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The Key Role of Memory in Next-Generation Embedded Systems for Military Applications

机译:内存在用于军事应用的下一代嵌入式系统中的关键作用

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With the increasing use of multi-core platforms in safety-related domains, aircraft system integrators and authorities exhibit a concern about the impact of concurrent access to shared-resources in the Worst-Case Execution Time (WCET). This paper highlights the need for accurate memory-centric scheduling mechanisms for guaranteeing prioritized memory accesses to Real-Time safety-related components of the system. We implemented a software technique called cache coloring that demonstrates that isolation at timing and spatial level can be achieved by managing the lines that can be evicted in the cache. In order to show the effectiveness of this technique, the timing properties of a real application are considered as a use case, this application is made of parallel tasks that show different trade-offs between computation and memory loads.
机译:随着在安全相关域中的多核平台使用的越来越多,飞机系统集成商和当局对最坏情况执行时间(WCET)中的共享资源并发访问的影响效果。本文重点介绍了准确的内存中心调度机制,以保证对系统的实时安全相关组件的优先内存访问。我们实现了一种名为Cache着色的软件技术,该技术演示了可以通过管理在缓存中可以驱逐的行来实现定时和空间级别的隔离。为了展示该技术的有效性,真实应用程序的时序属性被认为是用例,该应用程序由并行任务制成,该任务显示在计算和存储器负载之间显示不同的权衡。

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